As first proposed by Gruzinov, a charged particle moving in strong electromagnetic fields can enter an equilibrium state where the power input from the electric field is balanced by radiative losses. When this occurs, the particle moves at nearly light speed along special directions called the principal null directions (PNDs) of the electromagnetic field. This equilibrium is "Aristotelian" in that the particle velocity, rather than acceleration, is determined by the local electromagnetic field. In paper I of this series, we analytically derived the complete formula for the particle velocity at leading order in its deviation from the PND, starting from the fundamental Landau-Lifshitz (LL) equation governing charged particle motion, and demon...
We describe the creation and evolution of electron-positron pairs in a strong electric field as well...
The self force of electrodynamics is derived from a scalar field. The resulting equation of motion i...
The self force of electrodynamics is derived from a scalar field. The resulting equation of motion i...
Previous studies from the astrophysics and laser physics communities have identified an interesting ...
Previous studies from the astrophysics and laser physics communities have identified an interesting ...
(Abridged) Following particle trajectories in the intense electromagnetic field of a neutron star is...
The problem of the electromagnetic radiation of an accelerated charged particle is one of the most c...
This article offers a new approach for analysing the dynamic behaviour of distributions of charged p...
This article offers a new approach for analysing the dynamic behaviour of distributions of charged p...
This article offers a new approach for analysing the dynamic behaviour of distributions of charged p...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2021, Tutor: ...
The dynamics of charged particles in electromagnetic fields is an essential component of understandi...
The problem of the electromagnetic radiation of an accelerated charged particle is one of the most ...
The still unsolved problem of the origin of ultra high en-ergy cosmic radiation and related phenomen...
A kinetic theory is developed to describe radiating electrons whose motion is governed by the Lorent...
We describe the creation and evolution of electron-positron pairs in a strong electric field as well...
The self force of electrodynamics is derived from a scalar field. The resulting equation of motion i...
The self force of electrodynamics is derived from a scalar field. The resulting equation of motion i...
Previous studies from the astrophysics and laser physics communities have identified an interesting ...
Previous studies from the astrophysics and laser physics communities have identified an interesting ...
(Abridged) Following particle trajectories in the intense electromagnetic field of a neutron star is...
The problem of the electromagnetic radiation of an accelerated charged particle is one of the most c...
This article offers a new approach for analysing the dynamic behaviour of distributions of charged p...
This article offers a new approach for analysing the dynamic behaviour of distributions of charged p...
This article offers a new approach for analysing the dynamic behaviour of distributions of charged p...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2021, Tutor: ...
The dynamics of charged particles in electromagnetic fields is an essential component of understandi...
The problem of the electromagnetic radiation of an accelerated charged particle is one of the most ...
The still unsolved problem of the origin of ultra high en-ergy cosmic radiation and related phenomen...
A kinetic theory is developed to describe radiating electrons whose motion is governed by the Lorent...
We describe the creation and evolution of electron-positron pairs in a strong electric field as well...
The self force of electrodynamics is derived from a scalar field. The resulting equation of motion i...
The self force of electrodynamics is derived from a scalar field. The resulting equation of motion i...